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1,007
result(s) for
"anti-inflammatory targets"
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Application of 18 β -glycyrrhetinic acid Fluorescent probes in cell imaging
by
Zhang, Liying
,
Zhao, Yifan
,
Guo, Yachun
in
18β-Glycyrrhetinic acid
,
Animals
,
anti-inflammatory targets
2026
Fluorescently labelled small molecule probes (fluorescent probes) play an important role in cell imaging and are often used in combination with light-affinity probes to determine the subcellular localisation of target proteins. To investigate the target proteins of 18
-glycyrrhetinic acid (18
-GA), which regulates the macrophage inflammatory response, we designed and synthesised three types of fluorescent probes. We analysed its structure-activity relationship by evaluating the biological activity and screening for fluorescent probes with high activity. Our results showed that modifying C-3 hydroxyl and C-30 carboxyl groups enhanced the anti-inflammatory activity of 18
-GA, and found that two preferred probes had similar effects on LPS-induced, inflammation-related factor release (IL-1β, TNF-α, IL-6, HDAC8, P-STAT3, and SOCS3) to those of 18
-GA. Fluorescence signals of the preferred probes
and
were observed in the cytoplasm. The above results indicated that the anti-inflammatory site of 18
-GA may be located in proteins in the cytoplasm, which would provide useful information for research on the anti-inflammatory targets of 18
-GA.
Journal Article
Anemoside B4, a new pyruvate carboxylase inhibitor, alleviates colitis by reprogramming macrophage function
by
Liang, Qing-hua
,
Jiang, Hong-lv
,
Deng, Ke-jun
in
Affinity chromatography
,
Agonists
,
Amino acids
2024
ObjectivesColitis is a global disease usually accompanied by intestinal epithelial damage and intestinal inflammation, and an increasing number of studies have found natural products to be highly effective in treating colitis. Anemoside B4 (AB4), an abundant saponin isolated from Pulsatilla chinensis (Bunge), which was found to have strong anti-inflammatory activity. However, the exact molecular mechanisms and direct targets of AB4 in the treatment of colitis remain to be discovered.MethodsThe anti-inflammatory activities of AB4 were verified in LPS-induced cell models and 2, 4, 6-trinitrobenzene sulfonic (TNBS) or dextran sulfate sodium (DSS)-induced colitis mice and rat models. The molecular target of AB4 was identified by affinity chromatography analysis using chemical probes derived from AB4. Experiments including proteomics, molecular docking, biotin pull-down, surface plasmon resonance (SPR), and cellular thermal shift assay (CETSA) were used to confirm the binding of AB4 to its molecular target. Overexpression of pyruvate carboxylase (PC) and PC agonist were used to study the effects of PC on the anti-inflammatory and metabolic regulation of AB4 in vitro and in vivo.ResultsAB4 not only significantly inhibited LPS-induced NF-κB activation and increased ROS levels in THP-1 cells, but also suppressed TNBS/DSS-induced colonic inflammation in mice and rats. The molecular target of AB4 was identified as PC, a key enzyme related to fatty acid, amino acid and tricarboxylic acid (TCA) cycle. We next demonstrated that AB4 specifically bound to the His879 site of PC and altered the protein's spatial conformation, thereby affecting the enzymatic activity of PC. LPS activated NF-κB pathway and increased PC activity, which caused metabolic reprogramming, while AB4 reversed this phenomenon by inhibiting the PC activity. In vivo studies showed that diisopropylamine dichloroacetate (DADA), a PC agonist, eliminated the therapeutic effects of AB4 by changing the metabolic rearrangement of intestinal tissues in colitis mice.ConclusionWe identified PC as a direct cellular target of AB4 in the modulation of inflammation, especially colitis. Moreover, PC/pyruvate metabolism/NF-κB is crucial for LPS-driven inflammation and oxidative stress. These findings shed more light on the possibilities of PC as a potential new target for treating colitis.
Journal Article
17,18-epoxyeicosatetraenoic acid targets PPARγ and p38 mitogen-activated protein kinase to mediate its anti-inflammatory effects in the lung: role of soluble epoxide hydrolase
by
Sirois, Marco
,
Echavé, Vincent
,
Morin, Caroline
in
8,11,14-Eicosatrienoic Acid - analogs & derivatives
,
8,11,14-Eicosatrienoic Acid - pharmacology
,
Anti-Inflammatory Agents - pharmacology
2010
This study sought to assess putative pathways involved in the anti-inflammatory effects of 17,18-epoxyeicosatetraenoic acid (17,18-EpETE), as measured by a decrease in the contractile reactivity and Ca(2+) sensitivity of TNF-α-pretreated human bronchi. Tension measurements performed in the presence of 12-(3-adamantan-1-yl-ureido)-dodecanoic acid (AUDA), a soluble epoxide hydrolase (sEH)-specific inhibitor, demonstrated that 17,18-EpETE reduced the reactivity of TNF-α-pretreated tissues. The overexpression of sEH detected in patients with asthma and TNF-α-treated bronchi contributed to the maintenance of hyperresponsiveness in our models, which involved intracellular proinflammatory cascades. The inhibition of peroxisome proliferator-activated receptor (PPAR)γ by GW9662 abolished 17,18-EpETE + AUDA-mediated anti-inflammatory effects by inducing IκBα degradation and cytokine synthesis, indicating that PPARγ is a molecular target of epoxy-eicosanoids. Western blot analysis revealed that 17,18-EpETE pretreatment reversed the phosphorylation of p38 mitogen-activated protein kinase (p38-MAPK) induced by TNF-α in human bronchi. The Ca(2+) sensitivity of human bronchial explants was also quantified on β-escin permeabilized preparations. The presence of SB203580, a p38-MAPK inhibitor, reversed the effect induced by epoxy-eicosanoid in the presence of AUDA on TNF-α-triggered Ca(2+) hypersensitivity by increasing the phosphorylation level of PKC Potentiated Inhibitor Protein-17 (CPI-17) regulatory protein. Moreover, PPARγ ligands, such as rosiglitazone and 17,18-EpETE, decreased the expression of CPI-17, both at the mRNA and protein levels, whereas this effect was countered by GW9662 treatment in TNF-α-treated bronchi. These results demonstrate that 17,18-EpETE is a potent regulator of human lung inflammation and concomitant hyperresponsiveness, and may represent a valuable asset against critical inflammatory bronchial disorder.
Journal Article
Histidine supplementation improves insulin resistance through suppressed inflammation in obese women with the metabolic syndrome: a randomised controlled trial
by
Feng, R. N.
,
Sun, C. H.
,
Li, Q.
in
Adipocytes
,
Adipose Tissue, White - immunology
,
Adipose Tissue, White - metabolism
2013
Aims/hypothesis
Increased inflammation and oxidative stress are associated with insulin resistance (IR) and metabolic disorders. Serum histidine levels are lower and are negatively associated with inflammation and oxidative stress in obese women. The objective of this study was to evaluate the efficacy of histidine supplementation on IR, inflammation, oxidative stress and metabolic disorders in obese women with the metabolic syndrome (MetS).
Methods
A total of 100 obese women aged 33–51 years with BMI ≥ 28 kg/m
2
and diagnosed with MetS were included following a health examination in the community hospital in this randomised, double-blinded, placebo-controlled trial. Participants were allocated to interventions by an investigator using sequentially numbered sealed envelopes and received 4 g/day histidine (
n
= 50) or identical placebo (
n
= 50) for 12 weeks. Participants then attended the same clinic every 2 weeks for scheduled interviews and to count tablets returned. Serum histidine, HOMA-IR, BMI, waist circumference, fat mass, serum NEFA, and variables connected to inflammation and oxidative stress were measured at baseline and 12 weeks. Participants, examining physicians and investigators assessing the outcomes were blinded to group assignment. In addition, the inflammatory mechanisms of histidine were also explored in adipocytes.
Results
At 12 weeks, a total of 92 participants completed this trail. Compared with the placebo group (
n
= 47), histidine supplementation significantly decreased HOMA-IR (−1.09 [95% CI −1.49, −0.68]), BMI (−0.86 kg/m
2
[95% CI −1.55, −0.17]), waist circumference (−2.86 cm [95% CI −3.86, −1.86]), fat mass (−2.71 kg [95% CI −3.69, −1.73]), serum NEFA (−173.26 μmol/l [95% CI −208.57, −137.94]), serum inflammatory cytokines (TNF-α, −3.96 pg/ml [95% CI −5.29, −2.62]; IL-6, −2.15 pg/ml [95% CI −2.52, −1.78]), oxidative stress (superoxide dismutase, 17.84 U/ml [95% CI 15.03, 20.65]; glutathione peroxidase, 13.71 nmol/ml [95% CI 9.65, 17.78]) and increased serum histidine and adiponectin by 18.23 μmol/l [95% CI 11.74, 24.71] and 2.02 ng/ml [95% CI 0.60, 3.44] in histidine supplementation group (
n
= 45), respectively. There were significant correlations between changes in serum histidine and changes of IR and its risk factors. No side effects were observed during the intervention. In vitro study indicated that histidine suppresses
IL6
and
TNF
mRNA expression and nuclear factor kappa-B (NF-κB) protein production in palmitic acid-induced adipocytes in a dose-dependent manner, and these changes were diminished by an inhibitor of NF-κB.
Conclusions/interpretation
Histidine supplementation could improve IR, reduce BMI, fat mass and NEFA and suppress inflammation and oxidative stress in obese women with MetS; histidine could improve IR through suppressed pro-inflammatory cytokine expression, possibly by the NF-κB pathway, in adipocytes.
Trial registration
www.chictr.org/cn/ChiCTR-TRC-11001551
Funding
The study was supported by the National Natural Science Fund of China (No. 81202184, 81130049, 81102112), Heilongjiang Post/doctoral Fund (No. LBN-Z12193) and Key Laboratory of Nutrition and Food Hygiene (Harbin Medical University, Heilongjiang Higher Education Institutions, No. YYKFKT1202).
Journal Article
Novel Anti‐Inflammatory Drugs Based on Targeting Lung Dendritic Cells and Airway Epithelial Cells
by
Hammad, Hamida
,
Lambrecht, Bart N.
,
Plantinga, Maud
in
airway DCs, dense network ‐ in lung, sampling inhaled antigens
,
antigen uptake, across airway epithelial barrier ‐ DCs migrating to lymph nodes (LNs), stimulating naïve T cells
,
cells, contributing to pathogenesis ‐ of allergic diseases in respiratory tract
2011
Dendritic cells (DCs) are crucial in determining the functional outcome of allergen encounter in the lung. Antigen presentation by myeloid DCs leads to T helper (Th) 2 sensitization typical of allergic disease, whereas antigen presentation by plasmacytoid DCs serves to dampen inflammation. Whereas the epithelium was initially considered solely as a physical barrier, it is now seen as a central player in controlling the function of lung DCs through the release of innate Th2‐promoting cytokines. It is increasingly clear that DCs have an antigen‐presenting function beyond sensitization and control the reactivation and attraction of memory Th2 cells to the allergen‐challenged lung. DCs and their neighboring epithelial cells therefore constitute a novel target for the development of antiallergic therapy aimed at the origin of the inflammatory cascade. A careful study of DC and epithelial biology and of the innate cytokine network has provided a framework for the discovery of novel antiallergic compounds.
Book Chapter
Challenges and Opportunities for Celecoxib Repurposing
2023
Drug repositioning, also known as drug repurposing, reprofiling, or rediscovery, is considered to be one of the most promising strategies to accelerate the development of new original drug products. Multiple examples of successful rediscovery or therapeutic switching of old molecules that did not show clinical benefits or safety in initial trials encourage the following of the discovery of new therapeutic pathways for them. This review summarizes the efforts that have been made, mostly over the last decade, to identify new therapeutic targets for celecoxib. To achieve this goal, records gathered in MEDLINE PubMed and Scopus databases along with the registry of clinical trials by the US National Library of Medicine at the U.S. National Institutes of Health were explored. Since celecoxib is a non-steroidal anti-inflammatory drug that represents the class of selective COX-2 inhibitors (coxibs), its clinical potential in metronomic cancer therapy, the treatment of mental disorders, or infectious diseases has been discussed. In the end, the perspective of a formulator, facing various challenges related to unfavorable physicochemical properties of celecoxib upon the development of new oral dosage forms, long-acting injectables, and topical formulations, including the latest trends in the pharmaceutical technology, such as the application of mesoporous carriers, biodegradable microparticles, lipid-based nanosystems, or spanlastics, was presented.
Journal Article
An Update on Pharmacological Potential of Boswellic Acids against Chronic Diseases
by
Parama, Dey
,
Devi, Amrita Khwairakpam
,
Padmavathi, Ganesan
in
Acids
,
Animals
,
Anti-Inflammatory Agents, Non-Steroidal - administration & dosage
2019
Natural compounds, in recent years, have attracted significant attention for their use in the prevention and treatment of diverse chronic diseases as they are devoid of major toxicities. Boswellic acid (BA), a series of pentacyclic triterpene molecules, is isolated from the gum resin of Boswellia serrata and Boswellia carteri. It proved to be one such agent that has exhibited efficacy against various chronic diseases like arthritis, diabetes, asthma, cancer, inflammatory bowel disease, Parkinson’s disease, Alzheimer’s, etc. The molecular targets attributed to its wide range of biological activities include transcription factors, kinases, enzymes, receptors, growth factors, etc. The present review is an attempt to demonstrate the diverse pharmacological uses of BA, along with its underlying molecular mechanism of action against different ailments. Further, this review also discusses the roadblocks associated with the pharmacokinetics and bioavailability of this promising compound and strategies to overcome those limitations for developing it as an effective drug for the clinical management of chronic diseases.
Journal Article
Anti-inflammatory agents as modulators of the inflammation in adipose tissue: A systematic review
by
Carvalho de Queiroz, Jaluza Luana
,
Souza Passos, Thaís
,
Morais, Ana Heloneida de Araújo
in
Adipose tissue
,
Adipose Tissue - metabolism
,
Adipose tissues
2022
Obesity is characterized by an adipose tissue mass expansion that presents a risk to health, associated with a chronic increase in circulating inflammatory mediators. Anti-inflammatory agents are an obesity alternative treatment. However, the lack of effective agents indicates the need to assess the mechanisms and identify effective therapeutic targets. The present work identified and described the mechanisms of action of anti-inflammatory agents in adipose tissue in experimental studies. The review was registered in the International Prospective Registry of Systematic Reviews (PROSPERO—CRD42020182897). The articles’ selection was according to eligibility criteria (PICOS). The research was performed in PubMed, ScienceDirect, Scopus, Web of Science, VHL, and EMBASE. The methodological quality evaluation was assessed using SYRCLE. Initially, 1511 articles were selected, and at the end of the assessment, 41 were eligible. Among the anti-inflammatory agent classes, eight drugs, 28 natural, and five synthetic compounds were identified. Many of these anti-inflammatory agents act in metabolic pathways that culminate in the inflammatory cytokines expression reduction, decreasing the macrophages infiltration in white and adipose tissue and promoting the polarization process of type M1 to M2 macrophages. Thus, the article clarifies and systematizes these anti-inflammatory agents’ mechanisms in adipose tissue, presenting targets relevant to future research on these pathways.
Journal Article
Selenium and the Course of Mild Graves' Orbitopathy
by
von Arx, George
,
Bencivelli, Walter
,
Pitz, Susanne
in
Adult
,
Anti-Inflammatory Agents - adverse effects
,
Anti-Inflammatory Agents - therapeutic use
2011
This trial compared oral selenium, an antioxidant agent, or oral pentoxifylline, an antiinflammatory agent, with placebo in mild Graves' orbitopathy. Selenium significantly improved quality of life and eye involvement and slowed disease progression.
Approximately half the patients with Graves' disease have ocular involvement (Graves' orbitopathy).
1
Moderately severe and active forms of Graves' orbitopathy can be effectively treated with glucocorticoids, orbital irradiation, or both,
1
,
2
whereas milder forms may improve spontaneously and generally require only local measures to control symptoms (i.e., artificial tears, ointments, and prisms).
A wait-and-see strategy in which patients are monitored until symptoms worsen can be challenged. First, many patients with even mild Graves' orbitopathy have a substantial decrease in their quality of life, as assessed either by general health–related quality-of-life questionnaires
3
or by a Graves' orbitopathy–specific quality-of-life questionnaire (GO-QOL).
4
Second, . . .
Journal Article
A disease-associated gene desert directs macrophage inflammation through ETS2
2024
Increasing rates of autoimmune and inflammatory disease present a burgeoning threat to human health
1
. This is compounded by the limited efficacy of available treatments
1
and high failure rates during drug development
2
, highlighting an urgent need to better understand disease mechanisms. Here we show how functional genomics could address this challenge. By investigating an intergenic haplotype on chr21q22—which has been independently linked to inflammatory bowel disease, ankylosing spondylitis, primary sclerosing cholangitis and Takayasu’s arteritis
3
–
6
—we identify that the causal gene,
ETS2
, is a central regulator of human inflammatory macrophages and delineate the shared disease mechanism that amplifies
ETS2
expression. Genes regulated by ETS2 were prominently expressed in diseased tissues and more enriched for inflammatory bowel disease GWAS hits than most previously described pathways. Overexpressing
ETS2
in resting macrophages reproduced the inflammatory state observed in chr21q22-associated diseases, with upregulation of multiple drug targets, including TNF and IL-23. Using a database of cellular signatures
7
, we identified drugs that might modulate this pathway and validated the potent anti-inflammatory activity of one class of small molecules in vitro and ex vivo. Together, this illustrates the power of functional genomics, applied directly in primary human cells, to identify immune-mediated disease mechanisms and potential therapeutic opportunities.
ETS2
—which is associated with inflammatory bowel disease, ankylosing spondylitis, primary sclerosing cholangitis and Takayasu’s arteritis—is a central regulator of human inflammatory macrophages.
Journal Article